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对运动起始具有特异性的视觉诱发电位。

Visual evoked potentials specific for motion onset.

作者信息

Kuba M, Kubová Z

机构信息

Department of Physiology, Medical Faculty, Charles University, Hradec Králové, Czechoslovakia.

出版信息

Doc Ophthalmol. 1992;80(1):83-9. doi: 10.1007/BF00161234.

Abstract

Motion-onset visual evoked potentials were studied in 140 subjects by means of motion-onset stimulation either on a television screen or through back projecting via a moving mirror. The motion-onset visual evoked potentials were characterized in 94% of the population by a dominant negative peak with latency in the range of 135-180 ms. Motion-onset visual evoked potentials with a dominant positive peak, as described in the literature, seemed to be a variant of pattern-off visual evoked potentials, caused by the pattern-disappearance effect at the onset of motion with a high temporal frequency (the multiple of the spatial frequency of the structure and the velocity of motion) of more than 6 Hz. Such visual evoked potentials occur mainly when the stimulus is limited to the macular area only. Additionally, other stimulus and recording conditions were found to be suitable for acquiring the specific motion-onset potentials without their contamination by pattern-related components. These conditions were as follows: an aperiodic moving pattern (e.g., random dots) with a low contrast (less than 0.2); a short duration of motion (less than or equal to 200 ms) and a sufficient interstimulus interval (at least five times longer than the motion duration) to decrease the adaptation to motion; and extramacular stimulation and recording of visual evoked potentials from unipolar lateral occipital leads. Such leads should be used because of the lateralization of these visual evoked potentials (mainly to the right occipital area), which is consistent with their assumed extrastriate origin.

摘要

通过在电视屏幕上或通过移动镜进行背投的运动起始刺激,对140名受试者的运动起始视觉诱发电位进行了研究。在94%的人群中,运动起始视觉诱发电位的特征是出现一个主导负峰,其潜伏期在135 - 180毫秒范围内。如文献中所述,具有主导正峰的运动起始视觉诱发电位似乎是模式关闭视觉诱发电位的一种变体,它是由运动起始时具有高于6赫兹的高时间频率(结构的空间频率与运动速度的倍数)的模式消失效应引起的。这种视觉诱发电位主要在刺激仅局限于黄斑区域时出现。此外,还发现其他刺激和记录条件适合获取特定的运动起始电位,而不会受到与模式相关成分的干扰。这些条件如下:具有低对比度(小于0.2)的非周期性运动模式(例如随机点);短的运动持续时间(小于或等于200毫秒)和足够的刺激间隔(至少比运动持续时间长五倍)以减少对运动的适应;以及黄斑外刺激和从单极枕叶外侧导联记录视觉诱发电位。之所以应使用这些导联,是因为这些视觉诱发电位具有侧向化(主要在右侧枕叶区域),这与它们假定的纹外起源一致。

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